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猫运动过程中前肢形态在肌肉感觉运动功能中的作用。

Role of forelimb morphology in muscle sensorimotor functions during locomotion in the cat.

作者信息

Rahmati Seyed Mohammadali, Klishko Alexander N, Martin Ramaldo S, Bunderson Nate E, Meslie Jeswin A, Nichols T Richard, Rybak Ilya A, Frigon Alain, Burkholder Thomas J, Prilutsky Boris I

机构信息

School of Biological Sciences, Georgia Institute of Technology, Atlanta, GA, USA.

AVEVA, San Leandro, CA, USA.

出版信息

J Physiol. 2025 Jan;603(2):447-487. doi: 10.1113/JP287448. Epub 2024 Dec 20.

Abstract

Previous studies established strong links between morphological characteristics of mammalian hindlimb muscles and their sensorimotor functions during locomotion. Less is known about the role of forelimb morphology in motor outputs and generation of sensory signals. Here, we measured morphological characteristics of 46 forelimb muscles from six cats. These characteristics included muscle attachments, physiological cross-sectional area (PCSA) and fascicle length. We also recorded full-body mechanics and EMG activity of forelimb muscles during level overground and treadmill locomotion in seven and 16 adult cats of either sex, respectively. We computed forelimb muscle forces along with force- and length-dependent sensory signals mapped onto corresponding cervical spinal segments. We found that patterns of computed muscle forces and afferent activities were strongly affected by the muscle's moment arm, PCSA and fascicle length. Morphology of the shoulder muscles suggests distinct roles of the forelimbs in lateral force production and movements. Patterns of length-dependent sensory activity of muscles with long fibres (brachioradialis, extensor carpi radialis) closely matched patterns of overall forelimb length, whereas the activity pattern of biceps brachii length afferents matched forelimb orientation. We conclude that cat forelimb muscle morphology contributes substantially to locomotor function, particularly to control lateral stability and turning, rather than propulsion. KEY POINTS: Little is known about the role of forelimb muscle morphology in producing motor outputs and generating somatosensory signals. This information is needed to understand the contributions of forelimbs in locomotor control. We measured morphological characteristics of 46 muscles from cat forelimbs, recorded cat walking mechanics and electromyographic activity, and computed patterns of moment arms, length, velocity, activation, and force of forelimb muscles, as well as length- and force-dependent afferent activity during walking. We demonstrated that moment arms, physiological cross-sectional area and fascicle length of forelimb muscles contribute substantially to muscle force production and proprioceptive activity, to the regulation of locomotor cycle phase transitions and to control of lateral stability. The obtained information can guide the development of biologically accurate neuromechanical models of quadrupedal locomotion for exploring and testing novel methods of treatments of central nervous system pathologies by modulating activities in neural pathways controlling forelimbs/arms.

摘要

以往的研究证实了哺乳动物后肢肌肉的形态特征与其在运动过程中的感觉运动功能之间存在紧密联系。而关于前肢形态在运动输出和感觉信号产生中的作用,我们所知甚少。在此,我们测量了6只猫的46块前肢肌肉的形态特征。这些特征包括肌肉附着点、生理横截面积(PCSA)和肌束长度。我们还分别记录了7只雄性和16只雌性成年猫在水平地面行走和跑步机行走过程中的全身力学和前肢肌肉的肌电图活动。我们计算了前肢肌肉力量以及映射到相应颈髓节段的力和长度依赖性感觉信号。我们发现,计算出的肌肉力量和传入活动模式受到肌肉力臂、PCSA和肌束长度的强烈影响。肩部肌肉的形态表明前肢在侧向力产生和运动中具有不同的作用。长纤维肌肉(肱桡肌、桡侧腕伸肌)的长度依赖性感觉活动模式与前肢整体长度模式紧密匹配,而肱二头肌长度传入神经的活动模式与前肢方向相匹配。我们得出结论,猫前肢肌肉形态对运动功能有很大贡献,特别是对控制侧向稳定性和转向,而非推进。要点:关于前肢肌肉形态在产生运动输出和产生躯体感觉信号中的作用,我们所知甚少。了解这些信息对于理解前肢在运动控制中的贡献至关重要。我们测量了猫前肢46块肌肉的形态特征,记录了猫行走力学和肌电图活动,并计算了前肢肌肉的力臂、长度、速度、激活和力量模式,以及行走过程中长度和力依赖性传入活动。我们证明,前肢肌肉的力臂、生理横截面积和肌束长度对肌肉力量产生和本体感觉活动、运动周期相位转换调节以及侧向稳定性控制有很大贡献。所获得的信息可指导开发生物精确的四足动物运动神经力学模型,以探索和测试通过调节控制前肢/手臂的神经通路活动来治疗中枢神经系统疾病的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/005e/11737544/9a1d818beef8/TJP-603-447-g010.jpg

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